DocumentCode :
1442781
Title :
MABS: Multicast Authentication Based on Batch Signature
Author :
Yun Zhou ; Xiaoyan Zhu ; Yuguang Fang
Author_Institution :
Microsoft Corp., Redmond, WA, USA
Volume :
9
Issue :
7
fYear :
2010
fDate :
7/1/2010 12:00:00 AM
Firstpage :
982
Lastpage :
993
Abstract :
Conventional block-based multicast authentication schemes overlook the heterogeneity of receivers by letting the sender choose the block size, divide a multicast stream into blocks, associate each block with a signature, and spread the effect of the signature across all the packets in the block through hash graphs or coding algorithms. The correlation among packets makes them vulnerable to packet loss, which is inherent in the Internet and wireless networks. Moreover, the lack of Denial of Service (DoS) resilience renders most of them vulnerable to packet injection in hostile environments. In this paper, we propose a novel multicast authentication protocol, namely MABS, including two schemes. The basic scheme (MABS-B) eliminates the correlation among packets and thus provides the perfect resilience to packet loss, and it is also efficient in terms of latency, computation, and communication overhead due to an efficient cryptographic primitive called batch signature, which supports the authentication of any number of packets simultaneously. We also present an enhanced scheme MABS-E, which combines the basic scheme with a packet filtering mechanism to alleviate the DoS impact while preserving the perfect resilience to packet loss.
Keywords :
cryptography; digital signatures; graph theory; multicast communication; protocols; Internet; MABS; batch signature; block-based multicast authentication schemes; coding algorithms; cryptographic primitive; denial of service; hash graphs; multicast authentication protocol; multicast stream; packet filtering mechanism; packet loss; wireless networks; Authentication; Computer crime; Cryptographic protocols; Cryptography; Delay; IP networks; Multicast algorithms; Multicast protocols; Resilience; Wireless networks; Multimedia; authentication; multicast; signature.;
fLanguage :
English
Journal_Title :
Mobile Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1233
Type :
jour
DOI :
10.1109/TMC.2010.37
Filename :
5432180
Link To Document :
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